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评估不同处理阶段的城市废水作为小球藻在不同培养方式下的潜在生长介质。

Assessment of municipal wastewaters at various stages of treatment process as potential growth media for Chlorella sorokiniana under different modes of cultivation.

机构信息

Institute for Water and Wastewater Technology, Durban University of Technology, P.O. Box 1334, Durban 4000, South Africa.

Institute for Water and Wastewater Technology, Durban University of Technology, P.O. Box 1334, Durban 4000, South Africa.

出版信息

Bioresour Technol. 2017 Mar;227:82-92. doi: 10.1016/j.biortech.2016.12.037. Epub 2016 Dec 18.

Abstract

Wastewater utilization for microalgal biomass production is potentially the most economical route for its fuel and feed applications. In this study, suitability of various wastewater streams within a domestic wastewater treatment plant was evaluated for microalgal cultivation. Pre-treatment methods were evaluated to minimize bacterial load. Biomass, cell physiology, nutrient removal efficiencies and biochemical constituents of Chlorella sorokiniana were investigated in influent (INF) and anaerobic tank centrate (AC) under mixotrophic (Mixo) and heterotrophic (Hetero) cultivation. Promising biomass (77.14mgLd), lipid (24.91mgLd), protein (22.36mgLd) and carbohydrate (20.10mgLd) productivities were observed in Mixo AC with efficient ammonium (94.29%) and phosphate (83.30%) removal. Supplementation of urea at a concentration of 1500mgL further enhanced biomass (162.50mgLd), lipid (24.91mgLd), protein (22.36mgLd) and carbohydrate (20.10mgLd) productivities in Mixo AC. Urea supplemented mixotrophic cultivation of microalgae in AC is developed as a biomass production strategy.

摘要

利用废水生产微藻生物质对于其燃料和饲料应用来说是最经济的途径。本研究评估了污水处理厂内各种废水流在微藻培养中的适用性。评估了预处理方法以最大程度地减少细菌负荷。在混合营养(Mixo)和异养(Hetero)培养条件下,研究了小球藻在进水(INF)和厌氧罐浓缩液(AC)中的生物量、细胞生理、养分去除效率和生物化学组成。在 Mixo AC 中观察到了有前途的生物量(77.14mgLd)、脂质(24.91mgLd)、蛋白质(22.36mgLd)和碳水化合物(20.10mgLd)生产力,同时实现了高效的铵(94.29%)和磷酸盐(83.30%)去除。在浓度为 1500mgL 的尿素补充下,Mixo AC 中的微藻混合营养培养进一步提高了生物量(162.50mgLd)、脂质(24.91mgLd)、蛋白质(22.36mgLd)和碳水化合物(20.10mgLd)的生产力。在 AC 中添加尿素的混合营养培养被开发为一种生产生物量的策略。

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